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Improved thermal behavior of multiple linked arrays of silicon nanowires integrated into planar thermoelectric microgenerators

机译:集成到平面热电微型发电机中的硅纳米线的多个链接阵列的改善的热行为

摘要

Low-dimensional structures have been shown to be promising candidates for enhancing the thermoelectric properties of semiconductors, paving the way for integration of thermoelectric generators into silicon microtechnology. With this aim, dense arrays of well-oriented and size-controlled silicon nanowires (Si NWs) obtained by the chemical vapor deposition (CVD)-vapor-liquid-solid (VLS) mechanism have been implemented into microfabricated structures to develop planar unileg thermoelectric microgenerators (μTEGs). Different low-thermal-mass suspended structures have been designed and microfabricated on silicon-on-insulator (SOI) substrates to operate as microthermoelements using p-type Si NW arrays as the thermoelectric material. To obtain nanowire arrays with effective lengths larger than normally attained by the VLS technique, structures composed of multiple ordered arrays consecutively bridged by transversal microspacers have been fabricated. The successive linkage of multiple Si NW arrays enabled the development of larger temperature differences while preserving good electrical contact. This gives rise to small internal thermoelement resistances, enhancing the performance of the devices as energy harvesters. © 2013 TMS.
机译:低维结构已被证明是增强半导体热电性能的有前途的候选者,为将热电发生器集成到硅微技术中铺平了道路。为此,已将通过化学气相沉积(CVD)-气液固(VLS)机制获得的取向良好且尺寸可控的硅纳米线(Si NWs)的密集阵列实现为微细结构,以开发平面单腿热电微型发电机(μTEG)。已经设计了不同的低热质量悬浮结构,并在绝缘体上硅(SOI)衬底上进行了微加工,以使用p型Si NW阵列作为热电材料,用作微热元件。为了获得有效长度比通过VLS技术通常获得的有效长度大的纳米线阵列,已经制造了由多个有序阵列构成的结构,所述多个有序阵列由横向微间隔物连续桥接。多个Si NW阵列的连续链接使得在保持良好电接触的同时,可以产生更大的温差。这导致较小的内部热电偶电阻,从而增强了设备作为能量收集器的性能。 ©2013 TMS。

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